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    • 1. 发明申请
    • SUPERABRASIVE GRAIN SETTING METHOD
    • 超级粒度设定方法
    • US20090139148A1
    • 2009-06-04
    • US12272125
    • 2008-11-17
    • Sadao SAKAKIBARAKodo KobayashiHiroyasu ShimizuKazuhiko Sugita
    • Sadao SAKAKIBARAKodo KobayashiHiroyasu ShimizuKazuhiko Sugita
    • B24D13/00
    • B24D3/06B24D18/0009
    • In a superabrasive grain setting method, a two-dimensionally developed coordinate preparation step is taken, wherein a non-cylindrical area of a mounting surface where a tangential line to the mounting surface in a plane including the axis of the manufacturing mold crosses with the axis of a manufacturing mold is developed into a circular-arc belt-like surface, and a plurality of mounting points are set on the circular-arc belt-like surface in a grid pattern in dependence on mounting positions for superabrasive grains. Then, a rectification step is taken, wherein the grid pattern of the mounting points is rectified in predetermined angular ranges so that the mounting points do not make consecutive point lines in the circumferential direction of the circular-arc belt-like surface. A mounting step is thereafter taken of mounting the superabrasive grains on the mounting surface of the manufacturing mold based on the grid pattern rectified at the rectification step.
    • 在超磨粒设置方法中,采用二维展开的坐标准备步骤,其中,在包括制造模具的轴线的平面中的安装表面的切线与轴线交叉的安装表面的非圆柱形区域 的制造模具被开发成圆弧状带状表面,并且多个安装点根据超磨料颗粒的安装位置以网格图案设置在圆弧带状表面上。 然后,进行整流步骤,其中安装点的格栅图案以预定角度范围整流,使得安装点在圆弧形带状表面的圆周方向上不形成连续的点线。 此后,根据在整流步骤中整流的栅格图案,采用安装步骤,将超级磨料颗粒安装在制造模具的安装表面上。
    • 2. 发明授权
    • Superabrasive grain setting method
    • 超级磨粒设定法
    • US07927389B2
    • 2011-04-19
    • US12272125
    • 2008-11-17
    • Sadao SakakibaraKodo KobayashiHiroyasu ShimizuKazuhiko Sugita
    • Sadao SakakibaraKodo KobayashiHiroyasu ShimizuKazuhiko Sugita
    • B24D3/00B24D11/00B24D18/00C09K3/14
    • B24D3/06B24D18/0009
    • In a superabrasive grain setting method, a two-dimensionally developed coordinate preparation step is taken, wherein a non-cylindrical area of a mounting surface where a tangential line to the mounting surface in a plane including the axis of the manufacturing mold crosses with the axis of a manufacturing mold is developed into a circular-arc belt-like surface, and a plurality of mounting points are set on the circular-arc belt-like surface in a grid pattern in dependence on mounting positions for superabrasive grains. Then, a rectification step is taken, wherein the grid pattern of the mounting points is rectified in predetermined angular ranges so that the mounting points do not make consecutive point lines in the circumferential direction of the circular-arc belt-like surface. A mounting step is thereafter taken of mounting the superabrasive grains on the mounting surface of the manufacturing mold based on the grid pattern rectified at the rectification step.
    • 在超磨粒设置方法中,采用二维展开的坐标准备步骤,其中,在包括制造模具的轴线的平面中的安装表面的切线与轴线交叉的安装表面的非圆柱形区域 的制造模具被开发成圆弧状带状表面,并且多个安装点根据超磨料颗粒的安装位置以网格图案设置在圆弧带状表面上。 然后,进行整流步骤,其中安装点的格栅图案以预定角度范围整流,使得安装点在圆弧形带状表面的圆周方向上不形成连续的点线。 此后,根据在整流步骤中整流的栅格图案,采用安装步骤,将超级磨料颗粒安装在制造模具的安装表面上。
    • 3. 发明授权
    • Superabrasive grain setting apparatus
    • 超磨粒设备
    • US08016579B2
    • 2011-09-13
    • US12269297
    • 2008-11-12
    • Sadao SakakibaraKodo KobayashiHiroyasu ShimizuKazuhiko Sugita
    • Sadao SakakibaraKodo KobayashiHiroyasu ShimizuKazuhiko Sugita
    • A21C3/00
    • B24D18/0009B24D3/06Y10T428/24893
    • A superabrasive grain setting apparatus for arranging superabrasive grains on a surface of a manufacturing mold used in manufacturing a grinding tool includes a grip and raising mechanism for gripping the mold in a horizontal state and for turning the mold to a vertical state. A six-axis control robot is composed of a base arm mechanism with three controlled axes and a wrist unit with three controlled axes attached to the base arm mechanism. A superabrasive grain supply device has a grain storage for storing the superabrasive grains and a grain separation mechanism for separating the superabrasive grains in the grain storage one by one to a suction position. A suction nozzle is detachably mounted on an endmost arm of the robot and provided with a bent nose portion for drawing a grain of superabrasive to a nozzle end thereof at the suction position.
    • 用于在用于制造研磨工具的制造模具的表面上布置超级磨料颗粒的超级磨料颗粒设置装置包括用于将模具夹持在水平状态并将模具转动到垂直状态的把手和提升机构。 六轴控制机器人由具有三个受控轴的基臂机构和具有附接到基臂机构的三个受控轴的腕部单元组成。 超磨料颗粒供给装置具有用于储存超磨粒的颗粒储存器和用于将颗粒储存器中的超级磨料颗粒逐个分离到吸入位置的颗粒分离机构。 吸嘴可拆卸地安装在机器人的最末端的臂上,并设置有弯曲的鼻部,用于在吸引位置将一粒超级磨料粒子喷射到其喷嘴端。
    • 6. 发明授权
    • Brake shoe for elevator safety device
    • 电梯安全装置制动鞋
    • US5503257A
    • 1996-04-02
    • US282711
    • 1994-07-29
    • Kazuhiko SugitaKazumasa Ito
    • Kazuhiko SugitaKazumasa Ito
    • B66B5/26B66B5/18B66B5/22
    • B66B5/18
    • A brake shoe for an elevator safety device comprising a supporting body provided on a vertically moving body and having a front surface thereof facing a guide rail for being pressed toward the guide rail in the event of an emergency stop; the front surface having a plurality of bottomed holes provided therein; and a plurality of ceramic braking members disposed in the holes of the supporting body and each having a top portion thereof protruding from the front surface of the supporting body and each having an outer size smaller than a complementary size of each the hole. In the brake shoe, deformation, fusion, etc. on braking surfaces and breakage of the braking surfaces due to shocks during operation can be prevented, thereby achieving an improvement in safety and reliability. Further, an elevator speed can be increased and a device size can be reduced. Also, since the braking members have the outer sizes smaller than the complementary size of each of the holes, no compressive stress may normally be generated in the braking members.
    • 1.一种用于电梯安全装置的制动蹄,包括设置在垂直移动体上的支撑体,并且其前表面面向导轨,以在紧急停止的情况下被压向导轨; 所述前表面具有设置在其中的多个有底孔; 以及多个陶瓷制动构件,其设置在所述支撑体的孔中,并且每个陶瓷制动构件的顶部从所述支撑体的前表面突出,并且每个具有小于所述孔的互补尺寸的外径。 在制动蹄中,可以防止制动面上的变形,熔融等,并且可以防止由于操作时的冲击导致的制动面的破损,从而提高了安全性和可靠性。 此外,可以增加电梯速度并且可以减小装置尺寸。 此外,由于制动构件的外径小于每个孔的互补尺寸,所以在制动构件中通常不会产生压缩应力。
    • 8. 发明授权
    • Curved escalator
    • 弯曲自动扶梯
    • US4730717A
    • 1988-03-15
    • US17034
    • 1987-02-18
    • Kazuhiko Sugita
    • Kazuhiko Sugita
    • B66B21/06F16D55/00B66B21/02
    • B66B21/06
    • A curved escalator comprising a plurality of segment steps having step axles connected to an inner and an outer endless loop of step chains so that the steps circulate along the endless loops, and inner and outer sprocket wheels having different diameters for turning around the step axles along a conical surface in turn-around portions of the loop in engagement with the inner and outer endless chain loops, the bottom surfaces of the teeth being engageable with the step axles of the inner and outer sprocket wheels having sloped surfaces that are parallel to the axis of the step axles in the turn-around portion, and the teeth having the same pitch circle. Since the bottom surfaces of the teeth engaging the step axles have sloped surfaces that are parallel to the axis of the step axles in the turn-around portion, and since the pitch circles of the teeth are the same, the driving force is transmitted to the step axles and the step chain, and the steps are smoothly turned around to provide a better ride.
    • 一种弯曲自动扶梯,包括多个段步骤,其具有连接到步进链的内部和外部无限循环的步进轴,使得所述台阶沿着所述环形循环循环,以及具有不同直径的内部和外部链轮,用于围绕所述台阶轴 环形的环形部分与内部和外部环形链环接合的圆锥形表面,所述齿的底表面可与内部和外部链轮的台阶轴接合,其具有平行于轴线的倾斜表面 在转向部分中的台阶轴,并且具有相同节圆的齿。 由于与台阶轴接合的齿的底面具有与转向部中的台阶轴的轴线平行的倾斜面,并且由于齿的节圆相同,所以驱动力被传递到 步进车轮和步进链,并且步骤顺利地转过来提供更好的乘坐。
    • 9. 发明授权
    • Fluid bearing
    • 流体轴承
    • US4285551A
    • 1981-08-25
    • US53038
    • 1979-06-28
    • Hiroshi SuzukiKunio ShibataKazuhiko Sugita
    • Hiroshi SuzukiKunio ShibataKazuhiko Sugita
    • B24B41/00F16C32/06F16C33/10
    • B24B41/007F16C32/0659F16C33/106
    • A fluid bearing for rotatably supporting a rotary shaft. A plurality of pressure generating zones are defined on a bearing surface of a bearing member in a circumferential direction. Each of the pressure generating zones comprises a pair of axially spaced fluid pockets, at least one raised land formed in at least one of the pair of fluid pockets, a passage member for fluidically communicating the pair of fluid pockets with each other, a throttle member connected to the fluid pockets for admitting pressurized fluid therein and an exhaust port formed on the raised land for discharging pressurized fluid. An exhaust member is formed on the bearing surface outside the pressure generating zones for discharging pressurized fluid.
    • 一种用于可旋转地支撑旋转轴的流体轴承。 在圆周方向上在轴承构件的支承面上形成有多个压力产生区。 每个压力产生区域包括一对轴向隔开的流体袋,至少一个凸起的表面形成在一对流体袋中的至少一个中,用于使一对流体袋彼此流体连通的通道构件,节流构件 连接到用于允许加压流体的流体袋和形成在升高的陆地上用于排出加压流体的排气口。 排气构件形成在用于排出加压流体的压力产生区域外的轴承表面上。